Literature DB >> 27585308

Mimicking Primitive Photobacteria: Sustainable Hydrogen Evolution Based on Peptide-Porphyrin Co-Assemblies with a Self-Mineralized Reaction Center.

Kai Liu1,2,3, Ruirui Xing1, Yongxin Li1,3, Qianli Zou1, Helmuth Möhwald4, Xuehai Yan5,6.   

Abstract

Molecular evolution, with self-organization of simple molecules towards complex functional systems, provides a new strategy for biomimetic architectonics and perspectives for understanding the complex processes of life. However, there remain many challenges to fabrication of systems comprising different types of units, which interact with one another to perform desired functions. Challenges arise from a lack of stability, dynamic properties, and functionalities that reconcile with a given environment. A co-assembling fiber system composed of simple peptide and porphyrin is presented. This material is considered a prebiotic assembly of molecules that can be rather stable and flexibly self-functionalized with the assistance of visible light in a "prebiotic soup"; acidic (pH 2), hot (70 °C), and mineral-containing (Na(+) , Ti(4+) , Pt(2+) , and so forth) water. The co-assembled peptide-porphyrin fiber, with self-mineralized reaction centers, may serve as a primitive photobacteria-like cellular model to achieve light harvesting, energy transfer, and ultimately sustainable hydrogen evolution.
© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  hydrogen evolution; peptides; porphyrins; primitive photosystems; self-organization

Year:  2016        PMID: 27585308     DOI: 10.1002/anie.201606795

Source DB:  PubMed          Journal:  Angew Chem Int Ed Engl        ISSN: 1433-7851            Impact factor:   15.336


  12 in total

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5.  Preparation and Dye Degradation Performances of Self-Assembled MXene-Co3O4 Nanocomposites Synthesized via Solvothermal Approach.

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Review 7.  Peptide-modulated self-assembly as a versatile strategy for tumor supramolecular nanotheranostics.

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Journal:  ACS Omega       Date:  2019-04-25

9.  Primitive Photosynthetic Architectures Based on Self-Organization and Chemical Evolution of Amino Acids and Metal Ions.

Authors:  Kai Liu; Xiaokang Ren; Jianxuan Sun; Qianli Zou; Xuehai Yan
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10.  Facile Preparation of Carbon Nanotube-Cu2O Nanocomposites as New Catalyst Materials for Reduction of P-Nitrophenol.

Authors:  Yao Feng; Tifeng Jiao; Juanjuan Yin; Lun Zhang; Lexin Zhang; Jingxin Zhou; Qiuming Peng
Journal:  Nanoscale Res Lett       Date:  2019-03-05       Impact factor: 4.703

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